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Ö. Yaldizli

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Open access Aug 2026

Serum Glial Fibrillary Acidic Protein Dynamics, Disease Progression, and Therapy Response in Multiple Sclerosis.

Importance Capturing individual multiple sclerosis (MS) progression is difficult; few studies have evaluated glial fibrillary acidic protein (GFAP) in large longitudinal cohorts with independent validation. Objective To investigate whether serum GFAP levels and treatment-related changes are associated with future progression independent of relapse activity (PIRA). Design, Setting, and Participants This was a prospective observational study using 2 large MS cohorts: the Swiss MS Cohort (SMSC; initiated in June 2012; data extraction September 22, 2025) and the Expression, Proteomics, Imaging, Clinical study (EPIC; initiated in July 2004; data extraction February 21, 2024). The study took place at tertiary MS centers (8 for SMSC and 1 for EPIC). A total of 2329 persons with MS from both cohorts with at least 1 available time point with neurofilament light chain (NfL) and GFAP measurements were included (overall 18 629 measurements). Exposures Clinical data and NfL and GFAP z scores, collected and calculated every 6 or 12 months. Main Outcomes and Measures Risk of future PIRA, defined as Expanded Disability Status Scale score worsening confirmed after 6 or more months without relapses (in SMSC), or a composite additionally including greater than 20% worsening in the 9-hole peg test or timed 25-ft walk test (in EPIC). Results The SMSC and EPIC cohorts consisted of 1709 (13 375 samples; median [IQR] follow-up, 6.9 [2.5-10.7] years and age, 40.6 [32.1-50.1] years; 1128 [66.0%] female) and 620 (5254 samples; median [IQR] follow-up, 13.1 [9.4-14.0] years and age, 42.0 [35.0-50.0] years; 432 [69.7%] female) persons with MS, respectively. Consistent with prior work, high NfL was associated with relapse risk within the next year, whereas high GFAP was associated with long-term PIRA risk. In addition, elevated GFAP (z score >1.0 [84th percentile]) was associated with an average 40% higher hazard of short-term PIRA in the subsequent visit interval (SMSC: median [IQR] 346 [190-375] days; hazard ratio [HR], 1.45, 95% CI, 1.21-1.75; P < .001; EPIC: 385 [355-518] days; HR, 1.36; 95% CI, 1.07-1.71; P = .01). GFAP-based cohort enrichment in clinical trials targeting PIRA as an end point could reduce sample size by approximately 20%. Further, in SMSC, every yearly GFAP z score unit reduction during the first 2 years receiving fingolimod or B-cell-depleting therapy was associated with a lower risk of subsequent PIRA (54% risk reduction; HR, 0.46; 95% CI, 0.26-0.84; P = .01 and 67% risk reduction; HR, 0.33; 95% CI, 0.18-0.61; P < .001), respectively. Conclusions and Relevance In this cohort study, elevated GFAP was associated with a higher risk of PIRA, while treatment-associated reductions were associated with a lower PIRA risk. Together, these results suggest that serum GFAP may serve as a biomarker for personalized risk stratification and treatment monitoring and as a screening tool to reduce cohort size in clinical trials targeting MS progression.

M. Einsiedler, S. Sandgren, S. Schaedelin et al. · 0 citations
Jul 2026

Choroid plexus morphological and microstructural changes across inflammatory phenotypes in multiple sclerosis.

BACKGROUND Growing evidence supports choroid plexus (CP) involvement in MS pathophysiology, but phase-specific associations according to recent inflammatory activity and longitudinal dynamics remain unclear. OBJECTIVE To characterize CP alterations in MS using volumetric and quantitative magnetic resonance imaging (MRI) and explore associations with neuroinflammation and neurodegeneration. METHODS We analyzed cross-sectional and 2-year longitudinal data from 101 patients with active relapsing MS (RMS), 83 with inactive progressive MS (PMS), and 100 controls, with MS groups stratified by inflammatory activity within the prior year. CP volume, quantitative T1, and magnetization transfer saturation (MTsat) were assessed alongside imaging, serum, and clinical measures, with validation in a second cohort (62 active/357 inactive MS). RESULTS CP volume was increased in both active RMS and inactive PMS and was associated with lower total and cortical brain volumes. Associations with brain microstructural damage were more pronounced in periventricular regions, compatible with a surface-in pattern. Similar associations were observed in controls, suggesting CP volume may reflect processes beyond MS-specific pathology, including physiological factors. Longitudinally, CP volume increased exclusively in active RMS, with faster expansion associated with thalamic atrophy. CP MTsat was associated with cortical and paramagnetic rim lesions in inactive PMS. CONCLUSION CP enlargement is consistent across MS phases. Longitudinal expansion occurs in active inflammatory disease and is associated with neurodegenerative changes.

M. Mastantuono, A. Cagol, M. Ocampo-Pineda et al. · 0 citations